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Single and multiobjective frame optimization by evolutionary algorithms and the auto-adaptive rebirth operator

机译:基于进化算法和自适应重生算子的单目标和多目标框架优化

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The constrained minimum-mass problem of middle-size frames is taken into account, for both continuous and discrete cases with ideal (without buckling effect and own gravitational load) and real (with both) models, comparing three strategies of evolutionary algorithms. Some proposals to obtain appropriate results in middle-sized frames are exposed: optimization considerations about coding and structure; and the introduction of the auto-adaptive rebirth operator. Moreover, the introduction in the initial population of high quality single-optimization solutions obtained via the auto-adaptive rebirth operator is proposed as a way to improve the final non-dominated fronts obtained in structural frame multicriteria optimization (number of different cross-section types as second criteria). The results through three test cases (55-35 bar-sized) show the advantageous use of the auto-adaptive rebirth operator in frame optimization.
机译:对于具有理想模型(无屈曲效应和自身重力载荷)和实际模型(具有两种模型)的连续和离散情况,都考虑了中型框架的约束最小质量问题,并比较了三种进化算法。公开了一些在中型帧中获得适当结果的建议:有关编码和结构的优化考虑;并引入了自适应重生运算符。此外,建议将通过自适应重生算子获得的高质量单优化解决方案引入初始群体,以此作为改善在结构框架多准则优化(不同横截面类型数量)中获得的最终非支配前沿的一种方法。作为第二个标准)。通过三个测试用例(55-35 bar大小)的结果显示了自动重生运算符在帧优化中的优势。

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